<?xml version="1.0" encoding="utf-8"?>
<journal>
<title>Journal of Crop Production and Processing</title>
<title_fa>نشریه تولید و فرآوری محصولات زراعی و باغی</title_fa>
<short_title>Journal of Crop Production and Processing</short_title>
<subject></subject>
<web_url>http://jcpp.iut.ac.ir</web_url>
<journal_hbi_system_id>1</journal_hbi_system_id>
<journal_hbi_system_user>admin</journal_hbi_system_user>
<journal_id_issn>2251-8517</journal_id_issn>
<journal_id_issn_online>2251-8525</journal_id_issn_online>
<journal_id_pii></journal_id_pii>
<journal_id_doi></journal_id_doi>
<journal_id_iranmedex></journal_id_iranmedex>
<journal_id_magiran></journal_id_magiran>
<journal_id_sid></journal_id_sid>
<journal_id_nlai></journal_id_nlai>
<journal_id_science></journal_id_science>
<language>fa</language>
<pubdate>
	<type>jalali</type>
	<year>1403</year>
	<month>2</month>
	<day>1</day>
</pubdate>
<pubdate>
	<type>gregorian</type>
	<year>2024</year>
	<month>5</month>
	<day>1</day>
</pubdate>
<volume>14</volume>
<number>2</number>
<publish_type>online</publish_type>
<publish_edition>1</publish_edition>
<article_type>fulltext</article_type>
<articleset>
	<article>


	<language>fa</language>
	<article_id_doi></article_id_doi>
	<title_fa>تغییرات برخی ویژگی‌های فیزیولوژیک لوبیا با کاربرد بیوچار و اسید سالیسیلیک 
تحت شرایط تنش شوری خاک</title_fa>
	<title>Changes in Some Physiological Characteristics of Bean with the Application of Biochar and Salicylic Acid under Saline Soil Conditions</title>
	<subject_fa>عمومى</subject_fa>
	<subject>General</subject>
	<content_type_fa>پژوهشي</content_type_fa>
	<content_type>Research</content_type>
	<abstract_fa>&lt;div style=&quot;text-align: justify;&quot;&gt;گیاه لوبیا در بسیاری از کشورها از نظر رژیم غذایی در جایگاه ویژه&#8204;ایی قرار دارد چرا که آن حاوی پروتئین و فیبر بالا بوده و منبع غنی از مواد معدنی ضروری بدن است. پژوهشی گلخانه&#8204;ای با هدف بررسی اثرات بیوچار و اسید سالیسیلیک بر خصوصیات فیزیولوژیک گیاه لوبیا تحت شوری خاک به&amp;not;صورت آزمایش فاکتوریل در قالب طرح بلوک&#8204;های کامل تصادفی در چهار تکرار در سال&#8204;های 1401-1400 و 1402-1401 در دانشکده کشاورزی دانشگاه محقق اردبیلی اجرا شد. فاکتورها شامل بیوچار در چهار سطح (شاهد، بیوچار ساده و بیوچار تغییر یافته با اسید فسفریک و اسید سولفوریک)، محلول&#8204;پاشی اسید سالیسیلیک در سه سطح (شاهد، 0/5 و 1 میلی&#8204;مولار) و شوری در سه سطح 0، 4 و 8 دسی&#8204;زیمنس بر متر) بودند. نتایج نشان داد که اثرمتقابل سه جانبه فاکتورهای آزمایش تاثیر معنی&#8204;دار بر تمامی صفات مورد بررسی داشتند. بالاترین غلظت کلروفیل a و کاروتنوئید از ترکیب تیماری 1 میلی&#8204;مولار اسید سالیسیلیک بدون کاربرد بیوچار در شرایط عدم تنش شوری خاک به&amp;not;دست آمد. با این حال کاربرد بیوچار تغییر یافته با اسید فسفریک بدون مصرف اسید سالیسیلیک در شرایط شوری خاک متوسط (4 دسی&#8204;زیمنس بر متر) بالاترین میزان آنتوسیانین را در برگ لوبیا موجب شد. کاربرد یک میلی&#8204;مولار اسید سالیسیلیک تواماً با بیوچار ساده در شرایط عدم تنش شوری خاک، بالاترین میزان فتوسنتز جاری را در لوبیا موجب شد. در سطح شوری 8 دسی&amp;not;زیمنس بر متر خاک با وجود کاربرد اسید سالیسیلیک و بیوچار کمترین میزان فتوسنتز جاری به&amp;not;دست آمد. نتیجه&#8204;گیری شد که تحت تنش شوری خاک، ویژگی&#8204;های مختلف فیزیولوژیکی در گیاه لوبیا دچار تغییرات معنی&#8204;دار می&amp;not;شود، اما کاربرد سالیسیلیک اسید و بیوچار می&#8204;تواند به کاهش اثرات منفی تنش شوری خاک کمک کند. براساس نتایج کاربرد 0/5 میلی&#8204;مولار سالیسیلیک به&amp;not;مراه بیوچار ساده در تنش شوری متوسط و کاربرد 1 میلی&amp;not;مولار سالیسیلیک اسید توأم با بیوچار تغییر یافته با اسید فسفریک نتیجه بهتری نسبت به سایر تیمارها در اکثر صفات نشان دادند.&amp;nbsp;&lt;/div&gt;</abstract_fa>
	<abstract>&lt;span style=&quot;font-size:12pt&quot;&gt;&lt;span style=&quot;line-height:150%&quot;&gt;&lt;span style=&quot;unicode-bidi:embed&quot;&gt;&lt;span new=&quot;&quot; roman=&quot;&quot; style=&quot;font-family:&quot; times=&quot;&quot;&gt;&lt;b&gt;&lt;span style=&quot;font-size:11.0pt&quot;&gt;&lt;span style=&quot;line-height:150%&quot;&gt;&lt;span style=&quot;color:black&quot;&gt;Introduction&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/b&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;br&gt;
&lt;span style=&quot;font-size:12pt&quot;&gt;&lt;span style=&quot;unicode-bidi:embed&quot;&gt;&lt;span new=&quot;&quot; roman=&quot;&quot; style=&quot;font-family:&quot; times=&quot;&quot;&gt;&lt;i&gt;&lt;span style=&quot;font-size:11.0pt&quot;&gt;&lt;span style=&quot;color:black&quot;&gt;Phaseolus vulgaris&lt;/span&gt;&lt;/span&gt;&lt;/i&gt;&lt;span style=&quot;font-size:11.0pt&quot;&gt;&lt;span style=&quot;color:black&quot;&gt; L., commonly known as the common bean, is an important legume crop, responsible for 85% of global bean production. Nevertheless, soil salinity represents a significant challenge that severely impairs its productivity. Soil salinity represents one of the most detrimental constraints on crop growth and production. Conversely, beans are regarded as one of the most susceptible crops to salinity stress. However, the detrimental effects of salinity on crops can be significantly mitigated by the use of certain substances. Salinity exerts a significant negative influence on the primary plant processes, including photosynthesis and the production of photoassimilates, which ultimately results in a reduction in plant production. The application of an appropriate quantity of salicylic acid (SA) enhances the plant&amp;#39;s tolerance to abiotic stresses, thereby reducing the destructive effects of stress and increasing tolerance to abiotic stresses. It has been demonstrated that the external application of salicylic acid can induce the tolerance of crop plants to a range of abiotic stresses, including salt, drought, heat, cold, and heavy metals. Furthermore, SA can be an effective substance against plant abiotic stresses, as it can regulate a variety of phytohormones, and it may play a key role in free radical scavenging and nutrient uptake. Furthermore, the utilization of biochar represents an efficacious approach to mitigating the consequences of abiotic stresses, such as salinity. Biochar, a carbon-rich material, is employed to enhance soil carbon sequestration, reduce CO₂ emissions, and augment soil microbial diversity and activity. It has been postulated that biochar has the capacity to adsorb some of the toxic ions, such as Na and Cl, thereby reducing the toxic effects of salinity.&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;br&gt;
&lt;span style=&quot;font-size:12pt&quot;&gt;&lt;span style=&quot;unicode-bidi:embed&quot;&gt;&lt;span new=&quot;&quot; roman=&quot;&quot; style=&quot;font-family:&quot; times=&quot;&quot;&gt;&lt;b&gt;&lt;span style=&quot;font-size:11.0pt&quot;&gt;&lt;span style=&quot;color:black&quot;&gt;Materials and Methods&lt;/span&gt;&lt;/span&gt;&lt;/b&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;br&gt;
&lt;span style=&quot;font-size:12pt&quot;&gt;&lt;span style=&quot;unicode-bidi:embed&quot;&gt;&lt;span new=&quot;&quot; roman=&quot;&quot; style=&quot;font-family:&quot; times=&quot;&quot;&gt;&lt;span style=&quot;font-size:11.0pt&quot;&gt;&lt;span style=&quot;color:black&quot;&gt;A two-year glasshouse study was conducted using a randomized complete block design, with four replicates in each treatment. The study was conducted at the Faculty of Agriculture, University of Mohaghegh Ardabili, Iran over two consecutive years (2022-2023). The experiment included three levels of salicylic acid (SA): SA0 (0 mM), SA0.5 (0.5 mM) and SA1 (1 mM), four levels of biochar, including no biochar application as the control treatment (B0), recommended biochar (Rb) by application of 2.5% biochar. The treatments included 5% (w/w) of modified biochar with phosphoric acid (PA), 1.25% of modified biochar with sulfuric acid (Sb), and salt stress (SS) using NaCl in three levels: SS0 (distilled water), SS4 (4 dS m&lt;sup&gt;-1&lt;/sup&gt;), and SS8 (8 dS m&lt;sup&gt;-1&lt;/sup&gt;). In this experiment, the salinity treatment was applied in two stages: at the planting time and when the seedlings had fully established themselves in the soil. Salicylic acid was applied foliarly at two stages: early and late flowering, according to the predetermined levels.&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;br&gt;
&lt;span style=&quot;font-size:12pt&quot;&gt;&lt;span style=&quot;unicode-bidi:embed&quot;&gt;&lt;span new=&quot;&quot; roman=&quot;&quot; style=&quot;font-family:&quot; times=&quot;&quot;&gt;&lt;b&gt;&lt;span style=&quot;font-size:11.0pt&quot;&gt;&lt;span style=&quot;color:black&quot;&gt;Results and Discussion &lt;/span&gt;&lt;/span&gt;&lt;/b&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;br&gt;
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&lt;/v:textbox&gt; &lt;/v:shape&gt;&lt;span style=&quot;font-size:11.0pt&quot;&gt;&lt;span style=&quot;color:black&quot;&gt;Salinity had a detrimental impact on the biochemical attributes of bean plants, yet this effect was alleviated by the application of the SA treatment. Furthermore, salt stress resulted in a reduction in relative water content, membrane stability index, leaf area and photosynthetic pigments, which in turn led to a reduction in current photosynthesis and remobilisation of photoassimilates. Nevertheless, the application of biochar and the use of SA were found to alleviate the negative effects, resulting in a higher grain yield compared with the control plants, i.e. at the absence of biochar and SA application at the end of the experiment. The combined application of biochar and SA resulted in a higher relative water content, photosynthetic pigments and an enhanced rate of photosynthesis. The greatest accumulation of chlorophyll-a and carotenoids was observed in response to the application of SA1 without biochar in non-stress conditions. Furthermore, the lowest photosynthetic rate was observed in response to SS8. Moreover, the greatest anthocyanin accumulation was observed in response to the addition of biochar to the soil in the absence of SA under salt stress conditions.&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;br&gt;
&lt;span style=&quot;font-size:12pt&quot;&gt;&lt;span style=&quot;unicode-bidi:embed&quot;&gt;&lt;span new=&quot;&quot; roman=&quot;&quot; style=&quot;font-family:&quot; times=&quot;&quot;&gt;&lt;span style=&quot;font-size:11.0pt&quot;&gt;&lt;span style=&quot;color:black&quot;&gt;Our research has demonstrated that the combined application of biochar and SA can significantly mitigate the adverse effects of salinity stress on common beans. Furthermore, the results demonstrated that SA significantly enhanced grain yield of plants under both saline and non-saline soils. The results indicate that the excessive use of biochar and SA may lower the mentioned effectiveness, as the biochar increases soil porosity, which negatively impacts water availability. Furthermore, application of high doses of SA has been shown to have a negative impact on the biochemical and enzymatic attributes of the plant under salinity conditions. &lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;br&gt;
&lt;span style=&quot;font-size:12pt&quot;&gt;&lt;span style=&quot;unicode-bidi:embed&quot;&gt;&lt;span new=&quot;&quot; roman=&quot;&quot; style=&quot;font-family:&quot; times=&quot;&quot;&gt;&lt;b&gt;&lt;span style=&quot;font-size:11.0pt&quot;&gt;&lt;span style=&quot;color:black&quot;&gt;Conclusions&lt;/span&gt;&lt;/span&gt;&lt;/b&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;br&gt;
&lt;span style=&quot;font-size:12pt&quot;&gt;&lt;span style=&quot;unicode-bidi:embed&quot;&gt;&lt;span new=&quot;&quot; roman=&quot;&quot; style=&quot;font-family:&quot; times=&quot;&quot;&gt;&lt;span style=&quot;font-size:11.0pt&quot;&gt;&lt;span style=&quot;color:black&quot;&gt;Although the study on the effects of biochar and SA on common beans under salinity stress provides valuable insights, it is important to consider the limitations of the study. Consequently, the findings may not be directly extrapolated to the natural agricultural settings, where multiple environmental factors interact.&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;br&gt;
&lt;span style=&quot;font-size:12pt&quot;&gt;&lt;span style=&quot;unicode-bidi:embed&quot;&gt;&lt;span new=&quot;&quot; roman=&quot;&quot; style=&quot;font-family:&quot; times=&quot;&quot;&gt;&lt;span style=&quot;font-size:11.0pt&quot;&gt;&lt;span style=&quot;color:black&quot;&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;/span&gt;&lt;br&gt;
&amp;nbsp;</abstract>
	<keyword_fa>آنتوسیانین, کلروفیل, فتوسنتز</keyword_fa>
	<keyword>Anthocyanin, chlorophyll, photosynthesis, relative leaf water content</keyword>
	<start_page>51</start_page>
	<end_page>71</end_page>
	<web_url>http://jcpp.iut.ac.ir/browse.php?a_code=A-10-3819-1&amp;slc_lang=fa&amp;sid=1</web_url>


<author_list>
	<author>
	<first_name>M.</first_name>
	<middle_name></middle_name>
	<last_name>Nasiri</last_name>
	<suffix></suffix>
	<first_name_fa>معصومه</first_name_fa>
	<middle_name_fa></middle_name_fa>
	<last_name_fa>نصیری</last_name_fa>
	<suffix_fa></suffix_fa>
	<email>masomehnasiri1390@yahoo.com</email>
	<code></code>
	<orcid></orcid>
	<coreauthor>No</coreauthor>
	<affiliation>University of Zanjan</affiliation>
	<affiliation_fa>دانشگاه زنجان</affiliation_fa>
	 </author>


	<author>
	<first_name>B.</first_name>
	<middle_name></middle_name>
	<last_name>Andalibi</last_name>
	<suffix></suffix>
	<first_name_fa>بابک</first_name_fa>
	<middle_name_fa></middle_name_fa>
	<last_name_fa>عندلیبی</last_name_fa>
	<suffix_fa></suffix_fa>
	<email>babak.andalibi@Znu.ac.ir</email>
	<code></code>
	<orcid></orcid>
	<coreauthor>Yes
</coreauthor>
	<affiliation>University of Zanjan</affiliation>
	<affiliation_fa>دانشگاه زنجان</affiliation_fa>
	 </author>


	<author>
	<first_name>S.</first_name>
	<middle_name></middle_name>
	<last_name>Khomari</last_name>
	<suffix></suffix>
	<first_name_fa>سعید</first_name_fa>
	<middle_name_fa></middle_name_fa>
	<last_name_fa>خماری</last_name_fa>
	<suffix_fa></suffix_fa>
	<email>saeid.khomari@gmail.com</email>
	<code></code>
	<orcid></orcid>
	<coreauthor>No</coreauthor>
	<affiliation>University of mohageg ardabili</affiliation>
	<affiliation_fa>دانشگاه محقق اردبیلی</affiliation_fa>
	 </author>


	<author>
	<first_name>E.</first_name>
	<middle_name></middle_name>
	<last_name>Goli kalanpa</last_name>
	<suffix></suffix>
	<first_name_fa>اسماعیل</first_name_fa>
	<middle_name_fa></middle_name_fa>
	<last_name_fa>گلی کلانپا</last_name_fa>
	<suffix_fa></suffix_fa>
	<email>goli@uma.ac.ir</email>
	<code></code>
	<orcid></orcid>
	<coreauthor>No</coreauthor>
	<affiliation>University of mohageg ardabili</affiliation>
	<affiliation_fa>دانشگاه محقق اردبیلی</affiliation_fa>
	 </author>


	<author>
	<first_name>S.</first_name>
	<middle_name></middle_name>
	<last_name>Nasiri</last_name>
	<suffix></suffix>
	<first_name_fa>سجاد</first_name_fa>
	<middle_name_fa></middle_name_fa>
	<last_name_fa>نصیری</last_name_fa>
	<suffix_fa></suffix_fa>
	<email>sajjad.nasiri@znu.ac.ir</email>
	<code></code>
	<orcid></orcid>
	<coreauthor>No</coreauthor>
	<affiliation>University of Zanjan</affiliation>
	<affiliation_fa>دانشگاه زنجان</affiliation_fa>
	 </author>


</author_list>


	</article>
</articleset>
</journal>
