首页> 外文期刊>Journal of Turbulence >The AGPase Family Proteins in Banana: Genome-Wide Identification, Phylogeny, and Expression Analyses Reveal Their Involvement in the Development, Ripening, and Abiotic/Biotic Stress Responses
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The AGPase Family Proteins in Banana: Genome-Wide Identification, Phylogeny, and Expression Analyses Reveal Their Involvement in the Development, Ripening, and Abiotic/Biotic Stress Responses

机译:香蕉中的AgPase系列蛋白质:全基因组鉴定,系统发育和表达分析揭示了他们参与发展,成熟和非生物/生物应激反应

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摘要

ADP-glucose pyrophosphorylase (AGPase) is the first rate-limiting enzyme in starch biosynthesis and plays crucial roles in multiple biological processes. Despite its importance, AGPase is poorly studied in starchy fruit crop banana (Musa acuminata L.). In this study, eight MaAGPase genes have been identified genome-wide in M. acuminata, which could be clustered into the large (APL) and small (APS) subunits. Comprehensive transcriptomic analysis revealed temporal and spatial expression variations of MaAPLs and MaAPSs and their differential responses to abiotic/biotic stresses in two banana genotypes, Fen Jiao (FJ) and BaXi Jiao (BX). MaAPS1 showed generally high expression at various developmental and ripening stages and in response to abiotic/biotic stresses in both genotypes. MaAPL-3 and -2a were specifically induced by abiotic stresses including cold, salt, and drought, as well as by fungal infection in FJ, but not in BX. The presence of hormone-related and stress-relevant cis-acting elements in the promoters of MaAGPase genes suggests that MaAGPases may play an important role in multiple biological processes. Taken together, this study provides new insights into the complex transcriptional regulation of AGPases, underlying their key roles in promoting starch biosynthesis and enhancing stress tolerance in banana.
机译:ADP-葡萄糖焦磷酸化酶(AGPase)是淀粉生物合成中的第一速率限制性酶,并在多种生物过程中起关键的作用。尽管重要的是,淀粉果作物香蕉(Musa Acuminata L)研究了AgPase差。在该研究中,已经鉴定了八种MAAGPase基因在M. acumina中鉴定了基因组,其可以聚集到大(APL)和小(APS)亚基中。综合转录组分析显示了MAAPLS和MAAPS的时间和空间表达变化以及对两种香蕉基因型的非生物/生物应力的差异反应,Fen Jiao(FJ)和Baxi Jiao(BX)。 Maaps1在各种发育和成熟阶段显示出高表达,并响应两种基因型中的非生物/生物应力。 MAAPL-3和-2A由非生物应激诱导,包括寒冷,盐和干旱,以及FJ的真菌感染,但不在BX中。在MAAGPase基因的启动子中存在激素相关和应激相关的CIS作用元素的存在表明MAAGP酶可能在多种生物过程中发挥重要作用。这项研究占据了新的洞察力对患者的复杂转录调控,其主要作用在促进淀粉生物合成和增强香蕉中的应力耐受性。

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  • 来源
    《Journal of Turbulence》 |2017年第8期|共17页
  • 作者单位

    Chinese Acad Trop Agr Sci Minist Agr Inst Trop Biosci &

    Biotechnol Key Lab Trop Crop Biotechnol Haikou 571101 Hainan Peoples R China;

    Chinese Acad Trop Agr Sci Haikou Expt Stn Key Lab Genet Improvement Bananas Haikou 570102 Hainan Peoples R China;

    Commonwealth Sci &

    Ind Res Org Agr &

    Food Canberra ACT 2601 Australia;

    Chinese Acad Trop Agr Sci Minist Agr Inst Trop Biosci &

    Biotechnol Key Lab Trop Crop Biotechnol Haikou 571101 Hainan Peoples R China;

    Chinese Acad Trop Agr Sci Minist Agr Inst Trop Biosci &

    Biotechnol Key Lab Trop Crop Biotechnol Haikou 571101 Hainan Peoples R China;

    Chinese Acad Trop Agr Sci Minist Agr Inst Trop Biosci &

    Biotechnol Key Lab Trop Crop Biotechnol Haikou 571101 Hainan Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 流体力学;
  • 关键词

    banana (Musa acuminata L.); AGPase; genome-wide identification; fruit development; abiotic stress; biotic stress;

    机译:香蕉(Musa Acuminata L.);AgPase;全基因组鉴定;水果发育;非生物应激;生物应激;

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